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An accurate power control strategy for electromagnetic rotary power controllers
  • +3
  • Xiangwu Yan,
  • Chen Shao,
  • Jiaoxin Jia,
  • Waseem Aslam,
  • Weifeng Peng,
  • ruojia yang
Xiangwu Yan
North China Electric Power University
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Chen Shao
North China Electric Power University

Corresponding Author:[email protected]

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Jiaoxin Jia
North China Electric Power University - Baoding Campus
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Waseem Aslam
University of Sargodha
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Weifeng Peng
North China Electric Power University
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ruojia yang
North China Electric Power University - Baoding Campus
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Abstract

With the rapid development of active distribution networks, the “petal”-type distribution network has become the mainstream power supply structure. To ensure the safe and reliable power supply of a distribution system, power control methods for active distribution networks should be further studied. An electromagnetic rotary power flow controller (RPFC) is a feasible solution for active distribution network power control. However, when testing the effectiveness of the PQ decoupled control method for RPFC based on instantaneous reactive power theory, difficulties were encountered with the synchronous control of the rotor position angle of two rotating-phase transformers, and the accuracy of power control was unsatisfactory. Given this condition, PQ control is improved in three ways. First, the system periodic oscillation problem is solved via variable speed control. Second, the servo motor–rotary phase-shifting transformer synchronous rotation scheme is designed, reducing power control error and improving stability. The overshoot phenomenon in power control is improved using the variable domain fuzzy proportional–integral adaptive method. Experimental results show that the proposed advanced control scheme exhibits good dynamic and static performance in power control scenarios and achieves effective improvement of RPFC.
06 Nov 2022Reviewer(s) Assigned
12 Dec 2022Review(s) Completed, Editorial Evaluation Pending
11 Jan 2023Editorial Decision: Revise Major
10 Apr 20231st Revision Received
13 Apr 2023Submission Checks Completed
13 Apr 2023Assigned to Editor
13 Apr 2023Reviewer(s) Assigned
03 Jun 2023Review(s) Completed, Editorial Evaluation Pending
03 Jun 2023Editorial Decision: Accept